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Algorithm Research & Explore
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3289-3293,3302

Novel one-dimensional migration-coupled mapping lattice system and its dynamic characteristics

Zhao Geng1,2
Pan Zhou1
Ma Yingjie1
Dong Youheng2
1. Dept. of Cyberspace Security, Beijing Electronic Science & Technology Institute, Beijing 100070, China
2. School of Cyberspace Security, Beijing University of Posts & Telecommunications, Beijing 100089, China

Abstract

Chaos systems demonstrate complex dynamic behavior, but they undergo a degradation of dynamic characteristics when operating in digital systems. Cellular automata, with their discrete nature in both time and space, can effectively mitigate the issue of dynamic degradation in chaotic systems under finite precision. Based on cellular automata, this paper proposed a one-dimensional offset-coupled lattice system with a mapping function. This system dynamically generated coupling index offsets for each cell by utilizing the distinct states of the elementary cellular automaton during each iteration. Then, it applied different perturbations to the chaotic sequence based on these offsets and alternates the iteration rules of the cellular automaton. Finally, through comparative analysis of the dynamic characteristics of the chaotic system and quantification and randomness testing of the generated time series, the simulation results demonstrate that this chaotic system exhibits longer periods, improved traversal properties, and superior randomness in the generated sequences. It has significant application value in sequence encryption algorithms.

Foundation Support

北京高校“高精尖”学科建设项目(3201017)
国家自然科学基金资助项目(61772047)

Publish Information

DOI: 10.19734/j.issn.1001-3695.2023.03.0132
Publish at: Application Research of Computers Printed Article, Vol. 40, 2023 No. 11
Section: Algorithm Research & Explore
Pages: 3289-3293,3302
Serial Number: 1001-3695(2023)11-013-3289-05

Publish History

[2023-06-07] Accepted Paper
[2023-11-05] Printed Article

Cite This Article

赵耿, 潘周, 马英杰, 等. 新型一维偏移耦合映像格系统及其动态特性 [J]. 计算机应用研究, 2023, 40 (11): 3289-3293,3302. (Zhao Geng, Pan Zhou, Ma Yingjie, et al. Novel one-dimensional migration-coupled mapping lattice system and its dynamic characteristics [J]. Application Research of Computers, 2023, 40 (11): 3289-3293,3302. )

About the Journal

  • Application Research of Computers Monthly Journal
  • Journal ID ISSN 1001-3695
    CN  51-1196/TP

Application Research of Computers, founded in 1984, is an academic journal of computing technology sponsored by Sichuan Institute of Computer Sciences under the Science and Technology Department of Sichuan Province.

Aiming at the urgently needed cutting-edge technology in this discipline, Application Research of Computers reflects the mainstream technology, hot technology and the latest development trend of computer application research at home and abroad in a timely manner. The main contents of the journal include high-level academic papers in this discipline, the latest scientific research results and major application results. The contents of the columns involve new theories of computer discipline, basic computer theory, algorithm theory research, algorithm design and analysis, blockchain technology, system software and software engineering technology, pattern recognition and artificial intelligence, architecture, advanced computing, parallel processing, database technology, computer network and communication technology, information security technology, computer image graphics and its latest hot application technology.

Application Research of Computers has many high-level readers and authors, and its readers are mainly senior and middle-level researchers and engineers engaged in the field of computer science, as well as teachers and students majoring in computer science and related majors in colleges and universities. Over the years, the total citation frequency and Web download rate of Application Research of Computers have been ranked among the top of similar academic journals in this discipline, and the academic papers published are highly popular among the readers for their novelty, academics, foresight, orientation and practicality.


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